RESUMO
This article aimed to discuss the protection of trans - nerolidol on vascular endothelial cells (ECs) injured by lipopolysac charides. ECs were divided into four groups: normal, model, low and high dose trans - nerolidol treatment groups. The cell survival rate and the contents of NO in the cell culture supernatant were determined. The protein expression and transcript level of pe roxisome proliferator - activated receptor - γ (PPARγ), endothelial nitric oxide synthase (eNOS), and inducible nitric oxide synthase (iNOS) were determined by western blotting and RT - PCR respectively. Compared with the normal group, cell livability, protein e xpression and mRNA transcript level of PPARγ and eNOS decreased, NO contents, protein expression and mRNA transcript tlevel of iNOS increased in model group significantly. Compared with model group, all the changes recovered in different degree in treatmen t groups. Hence, it was concluded that trans - nerolidol can alleviate the ECs injuryby the regulation of iNOS/eNOS through activating PPARγ in a dose - dependent manner
Este artículo tiene como objetivo discutir la protección del trans - nerolidol en las células endoteliales vasculares (CE) dañadas por lipopolisacáridos. Las CE se di vidieron en cuatro grupos: normal, modelo, grupos de tratamiento con trans - nerolidol de baja y alta dosis. Se determinó la tasa de supervivencia de las células y los contenidos de óxido nítrico (NO) en el sobrenadante del cultivo celular. La expresión de p roteínas y el nivel de transcripción del receptor activado por proliferadores de peroxisomas - γ (PPARγ), el óxido nítrico sint et asa endotelial (eNOS) y el óxido nítrico sint et asa inducible (iNOS) se determinaron mediante western blot y RT - PCR, respectivamen te. En comparación con el grupo normal, la viabilidad celular, la expresión de proteínas y el nivel de transcripción de PPARγ y eNOS disminuyeron, los contenidos de NO, la expresión de proteínas y el nivel de transcripción de iNOS aumentaron significativam ente en el grupo modelo. En comparación con el grupo modelo, todos los cambios se recuperaron en diferentes grados en los grupos de tratamiento. Por lo tanto, se concluyó que el trans - nerolidol puede aliviar el daño en las CE regulando iNOS/eNOS a través d e la activación de PPARγ de manera dependiente de la dosis.
Assuntos
Sesquiterpenos/administração & dosagem , Doenças Vasculares/tratamento farmacológico , Endotélio Vascular/efeitos dos fármacos , Endotélio Vascular/lesões , Sobrevivência Celular , Lipopolissacarídeos/toxicidade , Western Blotting , Óxido Nítrico Sintase , Reação em Cadeia da Polimerase em Tempo RealRESUMO
Objective To study the effect of geniposide(Gen)on the proliferation,migration and angiogenesis of human retinal vascular endothelial cells(hRVECs)induced by high glucose and explore its mechanism.Methods The hRVECs were intervened with different concentrations(0,1,5,10,20,40 and 80 mg·L-1)of Gen for 24 h,and Cell Counting Kit-8(CCK-8)was used to detect the effect of Gen on the proliferation activity of hRVECs.The hRVECs were di-vided into the control group,high glucose(25 mmol·L-1)group,low,middle and high Gen concentration(5,10 and 20 mg·L-1)groups,bevacizumab(BEV,250 μg·L-1)group and high Gen concentration+BEV(250 pg·L-1)group.Cell proliferation activity was detected by CCK-8.The cell migration ability was detected by scratch test.The tube formation ability of cells was detected by the in vitro tube formation assay.The protein expression levels of vascular endothelial growth factor-A(VEGF-A),soluble VEGF receptor-1(sFlt-1),matrix metalloproteinase 2(MMP-2)and matrix metallo-proteinase 9(MMP-9)in cells were detected by Western blot.Results Compared with 0 mg·L-1 Gen,there was no sta-tistically significant difference in the effect of Gen with concentrations of 1,5,10,20,40 and 80 mg·L-1 on the prolifera-tion activity of hRVECs(all P>0.05).Compared with the control group,the proliferation activity and migration ability of hRVECs in the high glucose group were significantly enhanced(both P<0.05),the cell circular structure increased,the protein expression levels of VEGF-A,MMP-2 and MMP-9 significantly increased(all P<0.05),and the protein expression level of sFlt-1 significantly decreased(P<0.05).Compared with the high glucose group,the proliferative activity and mi-gration ability of cells in all Gen concentration groups and BEV group significantly decreased(all P<0.05),the circular structure of cells was reduced,the protein expression levels of VEGF-A,MMP-2 and MMP-9 significantly decreased(all P<0.05),and the protein expression level of sFlt-1 significantly increased(P<0.05).Compared with the high Gen concentra-tion group,the high Gen concentration+BEV group showed a significant decrease in cell proliferation activity(P<0.05),a decrease in cell circular structure,a significant decrease in VEGF-A,MMP-2 and MMP-9 protein expression levels(all P<0.05),and a significant increase in sFlt-1 protein expression level(P<0.05).Conclusion Gen can inhibit the high glucose-induced proliferation,migration and angiogenesis of hRVECs,and its mechanism may be related to the regulation of VEGF/sFlt-1 axis balance.
RESUMO
Objective:To observe the effect of Nodal on the biological behavior of retinal vascular endothelial cells (RF/6A cells) in monkeys with high glucose.Methods:RF/6A cells were divided into normal group, mannitol group, high glucose group, high glucose combined with non-specific small interfering RNA treatment group (HG+NC group), high glucose combined with small interfering Nodal treatment group (HG+siNodal group). The transfection efficiency of siNodal was observed by real-time fluorescence quantitative PCR and western blot protein immunoblotting. The effect of Nodal on the proliferation of RF/6A cells was detected by thiazole blue colorimetry. The effect of Nodal on migration ability of RF/6A cells was detected by cell scratch assay. The effect of Nodal on the formation of RF/6A cell lumen was measured by Matrigel three-dimensional in vitro. The expression of extracellular signal phosphorylated regulated kinase 1/2 (pERK1/2) in RF/6A cells was detected by western blot protein immunoblotting. One-way analysis of variance was used to compare groups.Results:Compared with HG+NC group, Nodal protein ( F=33.469) and mRNA relative expression levels ( F=38.191) in HG+siNodal group were significantly decreased, cell proliferation was significantly decreased ( F=28.548), and cell migration ability was significantly decreased ( F=24.182). The number of cell lumen formation was significantly decreased ( F=52.643), and the differences were statistically significant ( P<0.05). Compared with HG+NC group, the relative expression of pERK1/2 protein in HG+siNodal group was significantly decreased, and the difference was statistically significant ( F=44.462, P<0.01). Conclusions:Silencing Nodal expression can inhibit proliferation, migration and tube formation of RF/6A cells induced by high glucose. It may act by inhibiting pERK1/2 expression.
RESUMO
Objective:To observe the effects and explore the mechanism of Tuina(Chinese therapeutic massage)static training on vascular endothelial cell dysfunction and adiponectin(APN)in obese rats. Methods:Eight of 40 Sprague-Dawley rats were randomly selected as a normal group to be fed a common diet.The remaining rats were fed a high-fat diet to induce obesity models and randomly divided into a model group,an aerobic exercise group,and a static training group after successful modeling,with 8 rats in each group.During the entire experiment,rats in the normal group were fed a common diet without intervention.Rats in the model group were fed a high-fat diet without intervention.Rats in the aerobic exercise group were given moderate-intensity running exercises.Rats in the static training group were given 6-day/week static training for 8 weeks.The body mass and length of rats were recorded throughout the experiment,and the Lee's index was calculated.After the intervention,the perirenal and peri-epididymal fat weights of rats were measured,and the fat/body mass ratio was calculated.Four items of blood lipids were detected by biochemical methods[triglyceride(TG),total cholesterol(TC),low-density lipoprotein(LDL),and high-density lipoprotein(HDL)];serum nitric oxide(NO),endothelin-1(ET-1),soluble thrombomodulin(sTM),and APN were detected by enzyme-linked immunosorbent assay.The morphological changes of the aorta in each group were observed under the microscope. Results:Compared with the normal group,the body mass,body length,Lee's index,perirenal fat mass,peri-epididymal fat mass,fat/body mass ratio,TG,TC,LDL,ET-1,and sTM in the model group were significantly increased(P<0.05),while the HDL,NO,and APN were significantly reduced(P<0.01).Compared with the model group,the body mass,Lee's index,perirenal fat mass,peri-epididymal mass,fat/body mass ratio,TC,LDL,ET-1,and sTM in the aerobic exercise group and the static training group were significantly reduced(P<0.05 or P<0.01),while the HDL,NO,and APN were significantly increased(P<0.05 or P<0.01).Compared with the aerobic exercise group,NO in the static training group was significantly higher(P<0.05).APN was positively correlated with NO(P<0.01),while APN was negatively correlated with ET-1 or sTM(P<0.01).Aortic morphological observation showed that the degree of endothelial injury in the aerobic exercise group and the static training group was less significant than that in the model group,and the improvement of endothelial cell morphology in the static training group was more notable than that in the aerobic exercise group. Conclusion:Tuina static training and aerobic exercise improved the aortic endothelial injury in obese rats,and the effect of Tuina static training was more significant.The mechanism of action may be related to regulating lipid metabolism and promoting APN secretion.
RESUMO
AIM:To investigate the effects of overexpressing α-Klotho(KL)in RAW264.7 cells stimulated by oxidative stress on the proliferation, migration, tube-formation and tight junction of human umbilical vein endothelial cells(HUVECs).METHODS:RAW264.7 cells were categorized into control, 4-hydroxynonenal(4HNE), and 4HNE+KL groups, with F4/80 expression assessed via immunofluorescence staining. Three groups of conditional media were prepared for HUVECs and culture divided into M&#xF8;-NC, M&#xF8;-4HNE, and M&#xF8;-4HNE+KL groups. Cell proliferation was evaluated using CCK8 assay, while scratch test and Transwell assays were employed to measure cell migration. Additionally, tube-formation assay was conducted to assess cell tubule formation, and Western blot assay was utilized to detect the protein expression levels of Claudin 5, Occludin and ZO 1.RESULTS:The results of immunofluorescence staining showed that the fluorescence intensity of F4/80 of RAW264.7 cells in the 4HNE group was significantly enhanced compared with the control group, while that of F4/80 in the 4HNE+KL group was significantly decreased compared with the 4HNE group(all P<0.05). The CCK8 assay results revealed a significant increase in the proliferation of HUVECs in the M&#xF8;-4HNE group compared with the M&#xF8;-NC group. Conversely, the proliferation of the M&#xF8;-4HNE+KL group exhibited a significant decrease compared with that in the M&#xF8;-4HNE group(all P<0.01). The results of scratch test and Transwell assays demonstrated a significant increase in the migration of HUVECs in the M&#xF8;-4HNE group compared with the M&#xF8;-NC group, while the migration of the M&#xF8;-4HNE+KL group exhibited a significant decrease compared with the M&#xF8;-4HNE group(all P<0.01). In the tube-formation assay, it was observed that the number of tubes formed by HUVECs in the M&#xF8;-4HNE group was significantly increased compared with the M&#xF8;-NC group, while that of tubes formed in the M&#xF8;-4HNE+KL group was significantly decreased compared with the M&#xF8;-4HNE group(all P<0.01). Additionally, the Western blot results revealed a significant decrease in the relative expression levels of Claudin 5, Occludin, and ZO 1 in the M&#xF8;-4HNE group compared with the M&#xF8;-NC group. Conversely, in the M&#xF8;-4HNE+KL group, there was a significant increase in the relative expression levels of Claudin 5, Occludin, and ZO 1 compared to the M&#xF8;-4HNE group(all P<0.01).CONCLUSIONS: KL inhibits the proliferation, migration, and tube-formation of HUVECs while enhancing the tight junction by changing the activation state of macrophages in the diabetic oxidative stress environment.
RESUMO
Aim To investigate the relation between the effect of geniposide (GE) in improving angiogenesis in arthralgia spasm syndrome collagen induced arthritis (CIA) rats and the modulation of heat shock proteins 70 (HSP70) release. Methods A CIA model was constructed by multiple intradermal injections of complete Freund's adjuvant (CFA) and an equal volume mixture of chicken type II collagen (CCII) into the dorsal and caudal root regions of rats, on the basis of which a rheumatic fever stimulus was given to build up a moist heat arthralgia spasm syndrome in CIA rats. After successful modeling, the groups were randomly grouped, and the administered groups were gavaged with GE (60, 120 mg · kg
RESUMO
Objective:To investigate the regulatory effect of transient receptor potential cation channel subfamily C member 3 (TRPC3) on the retina in oxygen-induced retinopathy (OIR) mice and biological behavior of human retinal vascular endothelial cells (HREC).Methods:A total of 32 healthy SPF grade 7-day-old C57BL/6 mice were selected and randomly divided into a control group and an OIR group by the random number table method, with 16 mice in each group.The control group received no special treatment, and the OIR model was established in the OIR group.On postnatal day 17 (PN17), the success of the model establishment was verified by immunofluorescence staining of the retinal patch.The in vitro cultured HREC were divided into a normal control group, a transfection reagent group, and a si-TRPC3 group.The normal control group received no special treatment, while the transfection reagent group and the si-TRPC3 group were transfected with transfection reagent or transfection reagent + si-TRPC3.The relative expression of TRPC3 mRNA was detected by real-time quantitative fluorescence PCR.The relative expressions of TRPC3, transcription factor NF-E2 related factor (Nrf2), and superoxide dismutase (SOD) proteins were determined by Western blot.HREC were further divided into a normal control group, a vascular endothelial growth factor (VEGF) group, a si-TRPC3 group, and a Pyr3 (TRPC3 channel inhibitor) group, which were cultured in complete medium, medium containing 20 ng/ml VEGF recombinant protein, medium containing 20 ng/ml VEGF recombinant protein (si-TRPC3 transfection for 72 hours), and medium containing 20 ng/ml VEGF recombinant protein+ 1 μmol/L Pyr3 for 48 hours, respectively.The proliferation ability of HREC was detected using cell counting kit 8 (CCK-8). The horizontal and vertical migration ability of cells were detected by cell scratch assay and transwell assay, respectively.This study followed the 3R principles of animal welfare and was approved by the Ethics Committee of Hebei Eye Hospital (No.2023LW04). Results:Pathological neovascular clusters with strong fluorescent staining appeared in the retina of OIR mice on PN17.The relative expressions of TRPC3 mRNA and protein in the retina of OIR mice were 2.057±0.244 and 1.517±0.290, respectively, significantly higher than 0.983±0.033 and 0.874±0.052 of control group ( t=6.165, 3.094; both at P<0.05). The relative expression levels of TRPC3 mRNA and protein were significantly lower, and the relative expression levels of Nrf2 and SOD proteins were higher in the si-TRPC3 group than in the normal control and transfection reagent groups, and the differences were statistically significant (all at P<0.05). The CCK-8 experiment results showed that the cell absorbance value was higher in the VEGF group than in the normal control group, and lower in the si-TRPC3 and Pyr3 groups than in the VEGF group, with statistically significant differences (all at P<0.05). The results of the cell scratch experiment showed that the lateral migration rate of VEGF group cells was higher than that of normal control group, while the lateral migration rate of si-TRPC3 group and Pyr3 group cells was lower than that of VEGF group, and the differences were statistically significant (all at P<0.05). The transwell experiment results showed that the number of stained cells in the VEGF group was higher than that in the normal control group, and the number of stained cells in the si-TRPC3 group and Pyr3 group was lower than that in the VEGF group, with statistically significant differences (all at P<0.05). Conclusions:Hypoxia induces increased TRPC3 expression in OIR mouse retina, and downregulation of TRPC3 inhibits HREC proliferation and migration.The mechanism is related to the activation of the Nrf2-related oxidative stress pathway.
RESUMO
AIM:This study aimed to investigate the effects of hsa-miR-204-5p on the viability,migration,cell cycle,and apoptosis of human vascular endothelial cells.METHODS:We established a model using the hsa-miR-204-5p mimic in the human umbilical vein endothelial cell line EA.hy926.We evaluated the effects of hsa-miR-204-5p on endothelial cell functionality through various analyses,including cell scratch,Transwell,CCK-8,cell cycle,and apopto-sis assays.Subsequently,we employed RNA sequencing and RT-qPCR to predict and verify the downstream target genes of hsa-miR-204-5p.Genes meeting the criteria of log2FC≤-0.5 and P<0.05 in RNA sequencing and those predicted as downstream target genes of hsa-miR-204-5p by the miRWalk database were intersected.Furthermore,we conducted Gene Ontology(GO)and Kyoto Encyclopedia of Genes and Genomes(KEGG)enrichment analyses.RESULTS:Overexpres-sion of hsa-miR-204-5p inhibited the viability and migration of EA.hy926 cells,and reduced their apoptotic rate and the proportion of cells in S phase.Enrichment analyses showed that downstream target genes of hsa-miR-204-5p,including MAPT,PPP3R1,PRKACB,PTPRR,MAP2K4,CACNA2D2 and RPS6KA6,exhibited enrichment in MAPK signaling pathway.RT-qPCR results revealed that the mRNA expression levels of MAPT and MAP2K4,especially MAPT,were sig-nificantly down-regulated after overexpression of hsa-miR-204-5p.CONCLUSION:The findings suggest that hsa-miR-204-5p suppresses the biological behaviors of endothelial cells,such as viability,migration,and apoptosis,likely through the inhibition of MAPT/MAPK signaling pathway.
RESUMO
Objective@# To investigate the clinical manifestations, pathological features, and treatment of oral and maxillofacial pyogenic granulomas induced by camrelizumab. @*Methods@# A case of pyogenic granuloma of the gums and lips caused by camrelizumab was reported along with a literature review. @*Results@# After 4 months of treatment with camrelizumab for liver cancer, the patient developed systemic reactive capillary hyperplasia (RCH), followed by multiple masses on the lower lip and gingiva. After periodontal therapy, the masses on the lower lip and the gingiva were removed, and camrelizumab administration was stopped. The pathological result was gingival pyogenic granuloma/granulomatous hemangioma. No new masses were found in the oral cavity during postoperative follow-up. A review of the literature showed that RCH is the most common adverse drug reaction to camrelizumab but it occurs infrequently in the oral cavity. At present, the etiology of RCH has not been clarified, but the research has shown that camrelizumab may trigger tissue proliferation into hemangiomas by activating vascular endothelial cells, and the combined use of camrelizumab is safer than single use. RCH is self-limiting and most cases resolve spontaneously after discontinuation of the drug. If the mass causes dysfunction, surgical excision is feasible.@*Conclusion @#Camrelizumab can cause oral and maxillofacial reactive capillary hyperplasia complicated by pyogenic granuloma.
RESUMO
OBJECTIVE@#To investigate the regulatory role of the long non-coding RNA LINC00926 in pyroptosis of hypoxia-induced human umbilical vein vascular endothelial cells (HUVECs) and explore the molecular mechanism.@*METHODS@#HUVECs were transfected with a LINC00926-overexpressing plasmid (OE-LINC00926), a siRNA targeting ELAVL1, or both, followed by exposure to hypoxia (5% O2) or normoxia. The expression of LINC00926 and ELAVL1 in hypoxia-treated HUVECs was detected using real-time quantitative PCR (RT-qPCR) and Western blotting. Cell proliferation was detected using Cell Counting Kit-8 (CCK-8), and the levels of IL-1β in the cell cultures was determined with ELISA. The protein expression levels of pyroptosis-related proteins (caspase-1, cleaved caspase-1 and NLRP3) in the treated cells were analyzed using Western blotting, and the binding between LINC00926 and ELAVL1 was verified with RNA immunoprecipitation (RIP) assay.@*RESULTS@#Exposure to hypoxia obviously up-regulated the mRNA expression of LINC00926 and the protein expression of ELAVL1 in HUVECs, but did not affect the mRNA expression of ELAVL1. LINC00926 overexpression in the cells significantly inhibited cell proliferation, increased IL-1β level and enhanced the expressions of pyroptosis-related proteins (all P < 0.05). LINC00926 overexpression further up-regulated the protein expression of ELAVL1 in hypoxia-exposed HUVECs. The results of RIP assay confirmed the binding between LINC00926 and ELAVL1. ELAVL1 knockdown significantly decreased IL-1β level and the expressions of pyroptosis-related proteins in hypoxia-exposed HUVECs (P < 0.05), while LINC00926 overexpression partially reversed the effects of ELAVL1 knockdown.@*CONCLUSION@#LINC00926 promotes pyroptosis of hypoxia-induced HUVECs by recruiting ELAVL1.
Assuntos
Humanos , Caspase 1 , Proteína Semelhante a ELAV 1 , Células Endoteliais da Veia Umbilical Humana , Piroptose , RNA Mensageiro , RNA Longo não Codificante/genética , Hipóxia CelularRESUMO
Tetramethylpyrazine is the main component of Ligusticum chuanxiong. Studies have found that tetramethylpyrazine has a good protective effect against cardiovascular diseases. In the heart, tetramethylpyrazine can reduce myocardial ischemia/reperfusion injury by inhibiting oxidative stress, regulating autophagy, and inhibiting cardiomyocyte apoptosis. Tetramethylpyrazine can also reduce the damage of cardiomyocytes caused by inflammation, relieve the fibrosis and hypertrophy of cardiomyocytes in infarcted myocardium, and inhibit the expansion of the cardiac cavity after myocardial infarction. In addition, tetramethylpyrazine also has a protective effect on the improvement of familial dilated cardiomyopathy. Besides, the mechanisms of tetramethylpyrazine on blood vessels are more abundant. It can inhibit endothelial cell apoptosis by reducing oxidative stress, maintain vascular endothelial function and homeostasis by inhibiting inflammation and glycocalyx degradation, and protect vascular endothelial cells by reducing iron overload. Tetramethylpyrazine also has a certain inhibitory effect on thrombosis. It can play an anti-thrombotic effect by reducing inflammatory factors and adhesion molecules, inhibiting platelet aggregation, and suppressing the expression of fibrinogen and von Willebrand factor. In addition, tetramethylpyrazine can also reduce the level of blood lipid in apolipoprotein E-deficient mice, inhibit the subcutaneous deposition of lipids, inhibit the transformation of macrophages into foam cells, and inhibit the proliferation and migration of vascular smooth muscle cells, thereby reducing the formation of atherosclerotic plaque. In combination with network pharmacology, the protective mechanism of tetramethylpyrazine on the cardiovascular system may be mainly achieved through the regulation of phosphatidylinositol 3 kinase/protein kinase B(PI3K/Akt), hypoxia-inducible factor 1(HIF-1), and mitogen-activated protein kinase(MAPK) pathways. Tetramethylpyrazine hydrochloride and sodium chloride injection has been approved for clinical application, but some adverse reactions have been found in clinical application, which need to be paid attention to.
Assuntos
Camundongos , Animais , Células Endoteliais/metabolismo , Fosfatidilinositol 3-Quinases/metabolismo , Infarto do Miocárdio , Miocárdio/metabolismo , Miócitos Cardíacos , Trombose , Inflamação , ApoptoseRESUMO
In the present study, the contents of seven active components [genipinic acid(GA), protocatechuic acid(PCA), neochlorogenic acid(NCA), chlorogenic acid(CA), cryptochlorogenic acid(CCA),(+)-pinoresinol di-O-β-D-glucopyranosid(PDG), and(+)-pinoresinol 4'-O-β-D-glucopyranoside(PG)] of Eucommiae Cortex in aortic vascular endothelial cells of spontaneously hypertensive rats(SHR) were simultaneously determined by ultra-high liquid chromatography-triple quadrupole mass spectrometry(UPLC-MS/MS). The qualified SHR models were selected. The primary aortic endothelial cells(VECs) of rats were separated and cultured by ligation and adherence, followed by subculture. After successful identification, an UPLC-MS/MS method for simultaneously determining the contents of GA, PCA, NCA, CA, CCA, PDG, PG in seven components of Eucommiae Cortex in VECs was established, including specificity, linearity, matrix effect, recovery, accuracy, precision and stability. The established method had the lo-west limit of quantification of 0.97-4.95 μg·L~(-1), accuracy of 87.26%-109.6%, extraction recovery of 89.23%-105.3%, matrix effect of 85.86%-106.2%, and stability of 86.00%-112.5%. Therefore, the established accurate UPLC-MS/MS method could rapidly and simultaneously determine the contents of the seven active components of Eucommiae Cortex in VECs of SHRs, which provided a refe-rence for the study of cellular pharmacokinetics of active components of Eucommiae Cortex extract.
Assuntos
Ratos , Animais , Ratos Endogâmicos SHR , Cromatografia Líquida , Cromatografia Líquida de Alta Pressão/métodos , Células Endoteliais , Espectrometria de Massas em Tandem/métodosRESUMO
ObjectiveTo explore the protective effect and mechanism of Qihong Tongluo prescription on vascular endothelial cells in rats with deep venous thrombosis (DVT). MethodSixty-six SD rats were randomly divided into a blank group (n=11) and a modeling group (n=55). The DVT model was induced in rats of the modeling group by slowing down blood flow and damaging vascular endothelium. The model rats were randomly divided into model group, aspirin group (200 mg·kg-1), and low-,medium-, and high-dose Qihong Tongluo prescription groups (6.5, 13, 26 g·kg-1) according to a random number table. Rats were treated with corresponding drugs by gavage, while those in the model group and the blank group received normal saline, once per day for 7 days. The rats were sacrificed and the abdominal aortic blood was taken. The levels of serum endothelin-1 (ET-1) and interleukin-6 (IL-6) were detected by enzyme-linked immunosorbent assay (ELISA). Hematoxylin-eosin (HE) staining was used to observe the pathological changes in vascular endothelial tissues. The ultrastructure of vascular endothelial cells was observed by the transmission electron microscope. The viability of vascular endothelial cells was detected by methylthiazolyldiphenyl-tetrazolium bromide (MTT) method,and the release level of lactate dehydrogenase (LDH) was detected by the LDH kit. The messenger ribonucleic acid (mRNA) expression of platelet-activating factor (PAF),nuclear transcription factor κB (NF-κB),Ras-related C3 botulinum toxin substrate 1 (Rac1), and Ras-related C3 botulinum toxin substrate 2 (Rac2) in vascular endothelial tissues were detected by real-time reverse transcription polymerase chain reaction (Real-time PCR). The protein expression of PAF,NF-κB,Rac1, and Rac2 in vascular endothelial tissues was detected by Western blot. ResultThe model group showed seriously damaged and swollen vascular endothelial cells with massive shedding, attachment of massive inflammatory cells, nucleus pyknosis and deformation under the electron microscope, highly swollen mitochondria, serious cytoplasmic vacuolation,and exposure of internal elastic membrane. The damage of vascular endothelium and its ultrastructure in Qihong Tongluo prescription groups and the aspirin group was improved in varying degrees. Compared with the blank group,the model group showed increased levels of serum ET-1 and IL-6,potentiated vascular endothelial cell viability, up-regulated mRNA and protein expression of PAF,NF-κB,Rac1, and Rac2 in vascular endothelial tissues,and decreased LDH release level of vascular endothelial cells (P<0.05). Compared with the model group,the aspirin group and the Qihong Tongluo prescription groups showed decreased levels of serum ET-1 and IL-6,blunted vascular endothelial cell viability,down-regulated mRNA and protein expression of PAF,NF-κB,Rac1, and Rac2 in vascular endothelial tissues,and increased LDH release level of vascular endothelial cells (P<0.05). The effect of Qihong Tongluo prescription was dose-dependent. ConclusionQihong Tongluo prescription has a protective effect on vascular endothelial cells of DVT rats and can prevent and treat thrombosis,and its therapeutic effect is presumably achieved by inhibiting the expression of PAF,NF-κB,Rac1,and Rac2 and reducing the levels of serum ET-1 and IL-6.
RESUMO
Objective To investigate the effect of Danhuangsan on high glucose-induced vascular endothelial cell injury based on PINK 1/Parkin signaling pathway,and to explore its specific mechanism.Methods Human um-bilical vein endothelial cells were cultured in vitro and randomly divided into control group,growth factor group,Danhuangsan group,high glucose group,high glucose+growth factor group,high glucose+Danhuangsan group,with 3 cases in each group,treated for 48 hours.Cell scratch test was used to detect cell migration rate,and Transwell test was used to detect cell invasion rate.Immunofluorescence was used to detect the expression of anti-apoptotic protein Bcl-2,Beclin-1 and pro-apoptotic protein Bax.Western blot was used to detect the protein expression levels of PINK 1,Parkin and LC 3-Ⅱ.Results Cell scratch test and Transwell test showed that under normal environment and high glucose treatment,Danhuangsan could reduce the cell migration and invasion rate(P<0.05).Immunofluorescence assay showed that under normal environment and high glucose treatment,Danhuang-san up-regulated the expression levels of Bcl-2 and Beclin-1 protein in cells(P<0.05).Western blot results showed that under normal environment and high glucose treatment,Danhuangsan increased the protein expression levels of PINK 1,Parkin and LC 3-Ⅱ in cells and down-regulated the expression levels of Bax protein(P<0.05),and the effects of Danhuang powder were significantly better than those of blank serum and growth factor(P<0.05).Conclusion Danhuangsan can alleviate high glucose-induced endothelial cell injury by activating PINK 1/Parkin pathway,and the mechanism may be related to promoting mitophagy and enhancing the repair of damage.
RESUMO
Objective To explore the pattern of early expression and secretion of tissue factor(TF)in vascular endothelial cells induced by heat stress.Methods Thirty SPF-rated C57BL/6 male mice were randomly divided into five groups:the control group and groups of indicated recovery time,including 0,3,6,and 9 h in room temperature after heat stress(n=6).Mice in the heat stress groups were exposed to an animal incubator to reach 42.5℃for core body temperature for heat stroke.We analyzed the histopathological changes in the liver,lung,and kidney tissues with HE staining.We measured the TF mRNA in mice tissues by RT-qPCR and the plasma concentration of TF in mice with a commercial ELISA kit.Human umbilical vein endothelial cells(HUVECs)were placed in a culture incubator to build an in vitro heat stress model.HUVECs were divided into five groups,including a control group and groups of indicated recovery time,including 0,3,6,and 9 h after heat stress.We quantified the expression of TF mRNA and protein in HUVEC cells by RT-qPCR,Western blotting,and immunofluorescence and measured the secreted TF with a commercial ELISA kit.Results No significant pathological injury was observed in the tissues of the control group.Mice treated with heat stress had various degrees of structural injuries and hemorrhagic and inflammatory changes in multiple tissues.Compared to control group,the expression of TF mRNA significantly increased in the kidney of heat stress-treated mice with 0 and 3 h recovery time(1.719±0.018,1.241±0.178 vs.1.000±0.063),the lung with 3 h recovery time(2.444±0.511 vs.1.000±0.106)and the liver with 6 h recovery time(7.312±0.618 vs.1.000±0.147)(P<0.05).The concentration of TF in plasma also sustainedly elevated in mice with 0,3,6,and 9 h recovery time after heat stress as compared to control group[(132.426±17.920)pg/ml,(119.400±10.267)pg/ml,(107.374±13.495)pg/ml,(163.767±22.810)pg/ml vs.(75.479±13.831)pg/ml,respectively,P<0.01].The expression levels of TF mRNA were higher in heat stress HUVECs with 6 h and 9 h recovery time than the control cells(1.905±0.354,2.564±0.297 vs.1.000±0.097,P<0.01).Secreted TF in the supernatant from HUVECs treated with heat stress and different recovery time also increased significantly[(36.309±4.101)pg/ml,(38.425±5.484)pg/ml,(41.655±4.380)pg/ml,(43.586±4.718)pg/ml vs.(14.996±0.254)pg/ml,P<0.01].Conclusion Heat stress increased early expression and secretion of TF in vascular endothelial cells.Vascular endothelial cells may be a main source of circulating TF in heat stroke.
RESUMO
Objective:To observe the effect of interleukin-8 (IL-8) on the adhesion and migration of retinal vascular endothelial cells (RCEC).Methods:A cell experiment. Human RCEC (hRCEC) was divided into normal control group (N group), advanced glycation end product (AGE) treatment group (AGE group), and AGE-induced combined IL-8 antagonist SB225002 treatment group (AGE+SB group). The effect of AGE on IL-8 expression in hRCEC was observed by Western blot. The effect of SB225002 on hRCEC migration was observed by cell scratch assay. The effects of SB225002 on leukocyte adhesion and reactive oxygen species (ROS) on hRCEC were detected by flow cytometry. Student- t test was performed between the two groups. Oneway analysis of variance was performed among the three groups. Results:Compared with group N, the expression level of IL-8 in cells of AGE group was significantly increased, with statistical significance ( t=25.661, P<0.001). Compared with N group and AGE+SB group, cell mobility in AGE group was significantly increased ( F=29.776), leukocyte adhesion number was significantly increased ( F=38.159, 38.556), ROS expression level was significantly increased ( F=22.336), and the differences were statistically significant ( P<0.05). Conclusion:IL-8 antagonist SB225002 may down-regulate hRCEC adhesion and migration by inhibiting ROS expression.
RESUMO
Objective:To investigate the effect of Nodal protein on retinal neovascularization under hypoxia.Methods:In vivo animal experiment: 48 healthy C57BL/6J mice were randomly divided into normal group, oxygen-induced retinopathy (OIR) group, OIR+dimethyl sulfoxide (DMSO) group and OIR+SB431542 group, with 12 mice in each group. Retinal neovascularization was observed in mice at 17 days of age by retina flat mount. Counts exceeded the number of vascular endothelial nuclei in the retinal inner boundary membrane (ILM) by hematoxylin eosin staining. In vivo cell experiment: human retinal microvascular endothelial cells(hRMEC) were divided into normal group, hypoxia group, hypoxia+DMSO group and hypoxia +SB431542 group. The cell proliferation was detected by thiazolyl blue colorimetry (MTT). The effect of SB431542 on hRMEC lumen formation was detected by Matrigel three-dimensional in vitro molding method. Cell migration in hRMEC was detected by cell scratch assay. The Seahorse XFe96 Cell Energy Metabolism analyzer measured extracellular acidification rate (ECAR) of intracellular glycolysis, glycolysis reserve, and glycolysis capacity. One-way analysis of variance was used to compare groups.Results:In vivo animal experiment: compared with normal group, the neovascularization increased in OIR group ( t=41.621, P<0.001). Compared with OIR group, the number of vascular endothelial nuclei breaking through ILM in OIR+SB431542 group was significantly reduced, and the difference was statistically significant ( F=36.183, P<0.001). MTT test results showed that compared with normal group and hypoxia+SB431542 group, the cell proliferation of hypoxia group and hypoxia+DMSO group was significantly increased, and the difference was statistically significant ( F=39.316, P<0.01). The cell proliferation of hypoxia+SB431542 group was significantly lower than that of hypoxia+DMSO group, and the difference was statistically significant ( t=26.182, P<0.001). The number of intact lumen formation and migration cells in normal group, hypoxia group, hypoxia+DMSO group and hypoxia+SB431542 group were statistically significant ( F=34.513, 41.862; P<0.001, <0.01). Compared with the hypoxia+DMSO group, the number of intact lumen formation and migrating cells in the hypoxia+SB431542 group decreased significantly, and the differences were statistically significant ( t=44.723, 31.178; P<0.001,<0.01). The results of cell energy metabolism showed that compared with the hypoxia +DMSO group, the ECAR of intracellular glycolysis and glycolysis reserve in the hypoxia +SB431542 group was decreased, and the ECAR of glycolysis capacity was increased, with statistical significance ( t=26.175, 33.623, 37.276; P<0.05). Conclusion:SB431542 can inhibit the proliferation, migration and the ability to form lumens, reduce the level of glycolysis of hRMECs cells induced by hypoxia.
RESUMO
Objective:To observe the effect of high expression of polypyrimidine tract-binding protein-associated splicing factor (PSF) on low concentration of 4-hydroxynonenal (4-HNE) induced human retinal microvascular endothelial cells (HRMECs), and explore the possible mechanism.Methods:The HRMECs cultured in vitro were divided into 4-HNE treated group, PSF overexpression group combined with 4-HNE group (PSF+4-HNE group), PSF overexpression+ML385 treatment combined with 4-HNE group (PSF+ML385+4-HNE group), and 4-HNE induced PSF overexpression group with LY294002 pretreatment (LY294002+4-HNE+PSF group). Cell culture medium containing 10 μmmol/L 4-HNE was added into 4-HNE treatment group, PSF+4-HNE group, PSF+ML385+4-HNE group for 12 hours to stimulate oxidative stress. 1.0 μg of pcDNA-PSF eukaryotic expression plasmid were transfected into PSF+4-HNE group and PSF+ML385+4-HNE group to achieve the overexpression of PSF. Also cells were pretreated with ML385 (5 μmol/L) for 48 hours in the PSF+ML385+4-HNE group, meanwhile within the LY294002+4-HNE+PSF group, after pretreatment with LY294002, cells were treated with plasmid transfection and 4-HNE induction. Transwell detects the migration ability of PSF to HRMECs. The effect of PSF on the lumen formation of HRMECs was detected by using Matrigel in vitro three-dimensional molding method. Flow cytometer was used to detect the effect of PSF overexpression on reactive oxygen (ROS) level in HRMECs. Protein immunoblotting was used to detect the relative expression of PSF, nuclear factor E2 related factor 2 (Nrf2), heme oxygenase-1 (HO-1) protein, and phosphoserine threonine protein kinase (pAkt) protein. The comparison between the two groups was performed using a t-test. Results:The number of live cells, migrating cells, and intact lumen formation in the 4-HNE treatment group and the PSF+4-HNE group were 1.70±0.06, 0.80±0.13, 24.00±0.58, 10.00±0.67, and 725.00±5.77, 318.7±12.13, respectively. There were significant differences in the number of live cells, migrating cells, and intact lumen formation between the two groups ( t=12.311, 15.643, 17.346; P<0.001). The results of flow cytometry showed that the ROS levels in the 4-HNE treatment group, PSF+4-HNE group, and PSF+ML385+4-HNE group were 816.70±16.67, 416.70±15.44, and 783.30±17.41, respectively. There were statistically significant differences between the two groups ( t=16.311, 14.833, 18.442; P<0.001). Western blot analysis showed that the relative expression levels of pAkt, Nrf2, and HO-1 proteins in HRMECs in the 4-HNE treatment group, PSF+4-HNE group and LY294002+4-HNE+PSF group were 0.08±0.01, 0.57±0.04, 0.35±0.09, 0.17±0.03, 1.10±0.06, 0.08±0.11 and 0.80±0.14, 2.50±0.07, 0.50±0.05, respectively. Compared with the PSF+4-HNE group, the relative expression of pAkt, Nrf2, and HO-1 proteins in the LY294002+4-HNE+PSF group decreased significantly, with significant differences ( t=17.342, 16.813, 18.794; P<0.001). Conclusion:PSF upregulates the expression of HO-1 by activating the phosphatidylinositol 3 kinase/Akt pathway and inhibits cell proliferation, migration, and lumen formation induced by low concentrations of 4-HNE.
RESUMO
Objective:To observe the effects of p21 activated kinase 4 (PAK4) on the mitochondrial function and biological behavior in retinal vascular endothelial cells.Methods:The experimental study was divided into two parts: in vivo animal experiment and in vitro cell experiment. In vivo animal experiments: 12 healthy C57BL/6J male mice were randomly divided into normal control group and diabetes group, with 6 mice in each group. Diabetes mice were induced by streptozotocin to establish diabetes model. Eight weeks after modeling, quantitative real-time polymerase chain reaction and Western blots were performed to detect the expression of PAK4 in diabetic retinas. In vitro cell experiments: the human retinal microvascular endothelial cells (hRMEC) were divided into three groups: conventional cultured cells group (N group), empty vector transfected (Vector group); pcDNA-PAK4 eukaryotic expression plasmid transfected group (PAK4 group). WB and qPCR were used to detect transfection efficiency, while scratching assay, cell scratch test was used to detect cell migration in hRMEC of each group. In vitro white blood cell adhesion experiment combined with 4 ', 6-diamino-2-phenylindole staining was used to detect the number of white blood cells adhering to hRMEC in each group. The Seahorse XFe96 cell energy metabolism analyzer measures intracellular mitochondrial basal respiration, adenosine triphosphate (ATP) production, maximum respiration, and reserve respiration capacity. The t-test was used for comparison between the two groups. Single factor analysis of variance was used for comparison among the three groups. Results:In vivo animal experiments: compared with normal control group, the relative expression levels of PAK4 mRNA and protein in retina of diabetic mice were significantly increased, with statistical significance ( t=25.372, 22.419, 25.372; P<0.05). In vitro cell experiment: compared with the N group and Vector group, the PAK4 protein, mRNA relative expression and cell mobility in the hRMEC of PAK4 group were significantly increased, with statistical significance ( F=36.821, 38.692, 29.421; P<0.05). Flow cytometry showed that the adhesion number of leukocytes on hRMEC in PAK4 group was significantly increased, and the difference was statistically significant ( F=39.649, P<0.01). Mitochondrial pressure measurement results showed that the capacity of mitochondrial basic respiration, ATP production, maximum respiration and reserve respiration in hRMEC in PAK4 group was significantly decreased, with statistical significance ( F=27.472, 22.315, 31.147, 27.472; P<0.05). Conclusion:Over-expression of PAK4 impairs mitochondrial function and significantly promotes leukocyte adhesion and migration in retinal vascular endothelial cells.
RESUMO
Objective:To observe the effect of metformin (Met) on inflammatory bodies and focal death in human retinal microvascular endothelial cells (hRMEC) in diabetes mellitus (DM) microenvironment.Methods:Experimental research was divided into in vivo animal experiment and in vitro cell experiment. In vivo animal experiments: 9 healthy C57BL/6J male mice were randomly divided into DM group, normal control group, and DM+Met group, with 3 mice in each group. DM group and DM+Met group mice were induced by streptozotocin to establish DM model, and DM+Met group was given Met 400 mg/ (kg · d) intervention. Eight weeks after modeling, the expression of NLRP3, cleaved-membrane perforating protein D (GSDMD) and cleaved-Caspase-1 in the retina of mice in the normal control group, DM group and DM+Met group were observed by immunohistochemical staining. In vitro cell experiments: hRMEC was divided into conventional culture cell group (N group), advanced glycation end products (AGE) group, and AGE+Met group. Joining the AGE, AGE+Met groups cells were induced by 150 μg/ml of glycation end products, and 2.0 mmol/L Met was added to the AGE+Met group. Pyroptosis was detected by flow cytometry; 2' ,7'-dichlorofluorescein diacetate (DCFH-DA) fluorescent probe was used to detect the expression of reactive oxygen species (ROS) in cells of each group. Real-time fluorescence quantitative polymerase chain reaction and Western blot were used to detect the relative mRNA and protein expression levels of NLRP3, cleaved-GSDMD, cleaved-Caspase-1 in each group of cells. Single factor analysis of variance was used for comparison among the three groups.Results:In vivo animal experiments: compared with the DM group, the expression of NLRP3, cleaved-GSDMD, and cleaved-Caspase-1 in the retina of normal control group and DM+Met group mice was significantly reduced, with significant difference among the 3 groups ( F=43.478, 36.643, 24.464; P<0.01). In vitro cell experiment and flow cytometry showed that the pyroptosis rate of AGE group was significantly higher than that of N group and AGE+Met group ( F=32.598, P<0.01). The DCFH-DA detection results showed that the intracellular ROS levels in the N group and AGE+Met group were significantly lower than those in the AGE group, with the significant difference ( F=47.267, P<0.01). The mRNA ( F=51.563, 32.192, 44.473; P<0.01) and protein levels ( F=63.372, 54.463, 48.412; P<0.01) of NLRP3, cleaved-GSDMD, and cleaved-Caspase-1 in hRMEC of the AGE+Met group were significantly reduced compared to the N group. Conclusion:Met can down regulate the expression of NLRP3 inflammatory body related factors in hRMEC and inhibit pyroptosis.